Mild Motor Signs in Healthy Aging Are Associated with Lower Synaptic Density in the Brain

Margot G A Van Cauwenberge1,2, Aline Delva2,3, Thomas Vande Casteele1,4

  • 1Department of Neurosciences, Neuropsychiatry, Leuven Brain Institute, KU Leuven, Leuven, Belgium.

Abstract

Insights

Mild motor signs in aging correlate with reduced brain synaptic density. This finding suggests synaptic loss contributes to motor decline in healthy older adults.

Area of Science:

  • Neuroscience
  • Gerontology
  • Radiology

Background:

  • Normal aging involves motor function decline, often termed mild motor signs (MMS).
  • The underlying causes of MMS, whether global brain aging or specific motor circuit pathology, are not fully understood.
  • 11C-UCB-J positron emission tomography (PET) enables in vivo investigation of synaptic density in relation to motor function.

Purpose of the Study:

  • To determine if mild motor signs (MMS) in older adults correlate with synaptic density in the brain.
  • To explore the relationship between synaptic vesicle glycoprotein 2A (SV2A) availability and motor performance in healthy aging.

Main Methods:

  • Fifty-eight healthy older adults (≥50 years) underwent magnetic resonance imaging and 11C-UCB-J PET scans.
  • 11C-UCB-J binding (standardized uptake value ratio) was quantified in various brain regions, including the basal ganglia, thalamus, cerebellum, and cortex.
  • Multiple linear regression analyses examined the association between Movement Disorder Society-Unified Parkinson's Disease Rating Scale (MDS-UPDRS) part III scores (measuring MMS) and synaptic density, controlling for age and white matter lesion load.

Main Results:

  • MDS-UPDRS part III scores were inversely associated with synaptic density in the caudate, substantia nigra, thalamus, cerebellum, and parietal, occipital, and temporal cortex.
  • These associations were independent of white matter lesion load or gray matter volume.
  • Moderate effect sizes were observed for subcortical, cortical, and cerebellar regions.

Conclusions:

  • Mild motor signs in healthy aging are linked to reduced synaptic density across multiple brain areas.
  • Synaptic loss may be a key factor contributing to motor impairments observed in normal aging.
  • 11C-UCB-J PET imaging provides a valuable tool for assessing in vivo synaptic changes related to motor function.

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